Comparison of Proton and Carbon Ion Radiotherapy With Advanced Photon Radiotherapy in Skull Base Meningiomas: The PINOCCHIO Trial.

NCT ID: NCT01795300

Last Updated: 2021-10-06

Study Results

Results pending

The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.

Basic Information

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Recruitment Status

WITHDRAWN

Clinical Phase

NA

Study Classification

INTERVENTIONAL

Study Start Date

2020-05-01

Study Completion Date

2022-05-31

Brief Summary

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In PINOCCHIO-Triayl, carbon ion radiotherapy is compared to proton and advanced photon radiotherapy in patients with skull base meningiomas. There will be two treatment arms with photons, one arm with hypofractionated photon radiotherapy, and one arm with conventional fractionation. The study is designed as descriptive study on feasibility of the investigated therapies aiming at a comparison of toxicities. The study will serve as a basis for further larger randomized protocols comparing efficacy of the therapies, assuming toxicity is comparable in all four treatment arms. Primary endpoint is toxicity, secondary endpoints are overall survival, progression-free survival and quality of life.

Detailed Description

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Conditions

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Skull Base Meningioma

Study Design

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Allocation Method

RANDOMIZED

Intervention Model

PARALLEL

Primary Study Purpose

TREATMENT

Blinding Strategy

NONE

Study Groups

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Carbon Ion Radiotherapy

Treatment Schedule Carbon Ion Radiation Total Dose 45 Gy E, 15 fractions, 3 Gy E single dose

Group Type EXPERIMENTAL

Carbon Ion Radiotherapy

Intervention Type RADIATION

Patients will be immobilized using an individually manufactured head mask for treatment planning and RT. Contrast-enhanced CT as well as MR-imaging will be performed for target volume definition. OAR such as the brain stem, optic nerves, chiasm and spinal chord will be contoured. The fractionation scheme will be taken into account for dose prescription, as well as DVH-characteristics and clinical parameters of the invidivual patient.

The Gross Tumor Volume (GTV) will be defined as the contrast-enhancing lesion on MRI on T1-weighted MR-imaging. Amino-Acid-PET or DOTATOC-PET may be used in addition to contrast-enhanced MRI for target volume definition but is not mandatory.The Clinical Target Volume (CTV) will be defined adding 1-2mm safety margin to the GTV.

Proton Therapy

Treatment Schedule Proton Radiation Total Dose 45 Gy E, 15 fractions, 3 Gy E single dose

Group Type EXPERIMENTAL

Proton Therapy

Intervention Type RADIATION

As described previously, patients will be immobilized using an individually manufactured head mask for treatment planning and RT. Contrast-enhanced CT as well as MR-imaging will be performed for target volume definition. OAR such as the brain stem, optic nerves, chiasm and spinal chord will be contoured. Dose constraints of normal tissue will be respected according to Emami et al. (33). The fractionation scheme will be taken into account for dose prescription, as well as DVH-characteristics and clinical parameters of the invidivual patient.

The Gross Tumor Volume (GTV) will be defined as the contrast-enhancing lesion on MRI on T1-weighted MR-imaging. Amino-Acid-PET or DOTATOC-PET may be used in addition to contrast-enhanced MRI for target volume definition but is not mandatory.The Clinical Target Volume (CTV) will be defined adding 1-2mm safety margin to the GTV.

Hypofractionated Photon Therapy

Treatment Schedule Photon Radiation 3 Gy E Total Dose 45 Gy E, 15 fractions, 3 Gy E single dose

Group Type EXPERIMENTAL

Hypofractionated Photon Radiotherapy

Intervention Type RADIATION

Treatment Planning for Photon Radiotherapy will be performed using the Planning Systems available at the Department of Radiation Oncology in Heidelberg, Germany (including Masterplan/Nucletron, Virtuos-Konrad/Siemens, or Precisis/STP/Stryker-Leibinger, or the Tomotherapy Software). Carbon ion and proton RT planning is performed using the treatment planning software PT-Planning (Siemens, Erlangen, Germany) including biologic plan optimization. Biologically effective dose distributions will be calculated using the a/ß ratio for meningioma as well as for the endpoint late toxicity to the brain. Patient positioning prior to radiotherapy will be evaluated by comparison of x-rays to the DRRs. Set up deviations \>3mm are corrected prior to radiotherapy.

To the target volume defined for photon treatment, a total dose of 52.2 Gy E - 57.6 Gy E is applied in single fractions of 1.8Gy E. In the 3Gy E Photon arm, photon radiotherapy will be delivered to a total dose of 45 Gy E in 15 fractions.

Conventional Photon Radiotherapy

Treatment Schedule Photon Radiation 1.8 Gy E Total Dose 57.6 Gy Gy E, 32 fractions, 1.8 Gy E single dose

Group Type ACTIVE_COMPARATOR

Conventional Photon Radiotherapy

Intervention Type RADIATION

Treatment Planning for Photon Radiotherapy will be performed using the Planning Systems available at the Department of Radiation Oncology in Heidelberg, Germany (including Masterplan/Nucletron, Virtuos-Konrad/Siemens, or Precisis/STP/Stryker-Leibinger, or the Tomotherapy Software). Carbon ion and proton RT planning is performed using the treatment planning software PT-Planning (Siemens, Erlangen, Germany) including biologic plan optimization. Biologically effective dose distributions will be calculated using the a/ß ratio for meningioma as well as for the endpoint late toxicity to the brain. Patient positioning prior to radiotherapy will be evaluated by comparison of x-rays to the DRRs. Set up deviations \>3mm are corrected prior to radiotherapy.

Interventions

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Carbon Ion Radiotherapy

Patients will be immobilized using an individually manufactured head mask for treatment planning and RT. Contrast-enhanced CT as well as MR-imaging will be performed for target volume definition. OAR such as the brain stem, optic nerves, chiasm and spinal chord will be contoured. The fractionation scheme will be taken into account for dose prescription, as well as DVH-characteristics and clinical parameters of the invidivual patient.

The Gross Tumor Volume (GTV) will be defined as the contrast-enhancing lesion on MRI on T1-weighted MR-imaging. Amino-Acid-PET or DOTATOC-PET may be used in addition to contrast-enhanced MRI for target volume definition but is not mandatory.The Clinical Target Volume (CTV) will be defined adding 1-2mm safety margin to the GTV.

Intervention Type RADIATION

Proton Therapy

As described previously, patients will be immobilized using an individually manufactured head mask for treatment planning and RT. Contrast-enhanced CT as well as MR-imaging will be performed for target volume definition. OAR such as the brain stem, optic nerves, chiasm and spinal chord will be contoured. Dose constraints of normal tissue will be respected according to Emami et al. (33). The fractionation scheme will be taken into account for dose prescription, as well as DVH-characteristics and clinical parameters of the invidivual patient.

The Gross Tumor Volume (GTV) will be defined as the contrast-enhancing lesion on MRI on T1-weighted MR-imaging. Amino-Acid-PET or DOTATOC-PET may be used in addition to contrast-enhanced MRI for target volume definition but is not mandatory.The Clinical Target Volume (CTV) will be defined adding 1-2mm safety margin to the GTV.

Intervention Type RADIATION

Hypofractionated Photon Radiotherapy

Treatment Planning for Photon Radiotherapy will be performed using the Planning Systems available at the Department of Radiation Oncology in Heidelberg, Germany (including Masterplan/Nucletron, Virtuos-Konrad/Siemens, or Precisis/STP/Stryker-Leibinger, or the Tomotherapy Software). Carbon ion and proton RT planning is performed using the treatment planning software PT-Planning (Siemens, Erlangen, Germany) including biologic plan optimization. Biologically effective dose distributions will be calculated using the a/ß ratio for meningioma as well as for the endpoint late toxicity to the brain. Patient positioning prior to radiotherapy will be evaluated by comparison of x-rays to the DRRs. Set up deviations \>3mm are corrected prior to radiotherapy.

To the target volume defined for photon treatment, a total dose of 52.2 Gy E - 57.6 Gy E is applied in single fractions of 1.8Gy E. In the 3Gy E Photon arm, photon radiotherapy will be delivered to a total dose of 45 Gy E in 15 fractions.

Intervention Type RADIATION

Conventional Photon Radiotherapy

Treatment Planning for Photon Radiotherapy will be performed using the Planning Systems available at the Department of Radiation Oncology in Heidelberg, Germany (including Masterplan/Nucletron, Virtuos-Konrad/Siemens, or Precisis/STP/Stryker-Leibinger, or the Tomotherapy Software). Carbon ion and proton RT planning is performed using the treatment planning software PT-Planning (Siemens, Erlangen, Germany) including biologic plan optimization. Biologically effective dose distributions will be calculated using the a/ß ratio for meningioma as well as for the endpoint late toxicity to the brain. Patient positioning prior to radiotherapy will be evaluated by comparison of x-rays to the DRRs. Set up deviations \>3mm are corrected prior to radiotherapy.

Intervention Type RADIATION

Eligibility Criteria

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Inclusion Criteria

Patients meeting all of the following criteria will be considered for admission to the trial:

* Histologically or imaging confirmed skull base meningioma
* macroscopic tumor - Simpson Grade 4 or 5
* age ≥ 18 years of age
* Karnofsky Performance Score \>=60
* For women with childbearing potential, (and men) adequate contraception (sexual abstinence, estrogen- or gestagen containing contraceptive medication etc.)
* Female participants: No pregnancy present (pregnancy test required)
* Ability of subject to understand character and individual consequences of the clinical trial
* Written informed consent (must be available before enrolment in the trial)

Exclusion Criteria

Patients presenting with any of the following criteria will not be included in the trial:

* refusal of the patients to take part in the study
* previous radiotherapy of the brain
* histologically confirmed atypical or anaplastic meningioma
* optic nerve sheath meningioma (ONSM)
* Patients who have not yet recovered from acute toxicities of prior therapies
* Known carcinoma \< 5 years ago (excluding Carcinoma in situ of the cervix, basal cell carcinoma, squamous cell carcinoma of the skin) requiring immediate treatment interfering with study therapy
* Pregnant or lactating women
* Participation in another clinical study or observation period of competing trials, respectively.
Minimum Eligible Age

18 Years

Eligible Sex

ALL

Accepts Healthy Volunteers

No

Sponsors

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University Hospital Heidelberg

OTHER

Sponsor Role lead

Responsible Party

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Juergen Debus

Prof. Dr. Dr. Jürgen Debus

Responsibility Role PRINCIPAL_INVESTIGATOR

Locations

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University Hospital of Heidelberg, Radiation Oncology

Heidelberg, , Germany

Site Status

Countries

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Germany

Other Identifiers

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PINOCCHIO

Identifier Type: -

Identifier Source: org_study_id

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